sys_pipe.c revision 1.125 1 1.125 dsl /* $NetBSD: sys_pipe.c,v 1.125 2009/12/13 20:02:23 dsl Exp $ */
2 1.35 pk
3 1.35 pk /*-
4 1.106 ad * Copyright (c) 2003, 2007, 2008, 2009 The NetBSD Foundation, Inc.
5 1.35 pk * All rights reserved.
6 1.35 pk *
7 1.35 pk * This code is derived from software contributed to The NetBSD Foundation
8 1.80 ad * by Paul Kranenburg, and by Andrew Doran.
9 1.35 pk *
10 1.35 pk * Redistribution and use in source and binary forms, with or without
11 1.35 pk * modification, are permitted provided that the following conditions
12 1.35 pk * are met:
13 1.35 pk * 1. Redistributions of source code must retain the above copyright
14 1.35 pk * notice, this list of conditions and the following disclaimer.
15 1.35 pk * 2. Redistributions in binary form must reproduce the above copyright
16 1.35 pk * notice, this list of conditions and the following disclaimer in the
17 1.35 pk * documentation and/or other materials provided with the distribution.
18 1.35 pk *
19 1.35 pk * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.35 pk * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.35 pk * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.35 pk * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.35 pk * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.35 pk * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.35 pk * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.35 pk * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.35 pk * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.35 pk * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.35 pk * POSSIBILITY OF SUCH DAMAGE.
30 1.35 pk */
31 1.2 jdolecek
32 1.1 jdolecek /*
33 1.1 jdolecek * Copyright (c) 1996 John S. Dyson
34 1.1 jdolecek * All rights reserved.
35 1.1 jdolecek *
36 1.1 jdolecek * Redistribution and use in source and binary forms, with or without
37 1.1 jdolecek * modification, are permitted provided that the following conditions
38 1.1 jdolecek * are met:
39 1.1 jdolecek * 1. Redistributions of source code must retain the above copyright
40 1.1 jdolecek * notice immediately at the beginning of the file, without modification,
41 1.1 jdolecek * this list of conditions, and the following disclaimer.
42 1.1 jdolecek * 2. Redistributions in binary form must reproduce the above copyright
43 1.1 jdolecek * notice, this list of conditions and the following disclaimer in the
44 1.1 jdolecek * documentation and/or other materials provided with the distribution.
45 1.1 jdolecek * 3. Absolutely no warranty of function or purpose is made by the author
46 1.1 jdolecek * John S. Dyson.
47 1.1 jdolecek * 4. Modifications may be freely made to this file if the above conditions
48 1.1 jdolecek * are met.
49 1.1 jdolecek */
50 1.1 jdolecek
51 1.1 jdolecek /*
52 1.1 jdolecek * This file contains a high-performance replacement for the socket-based
53 1.106 ad * pipes scheme originally used. It does not support all features of
54 1.106 ad * sockets, but does do everything that pipes normally do.
55 1.2 jdolecek *
56 1.1 jdolecek * This code has two modes of operation, a small write mode and a large
57 1.1 jdolecek * write mode. The small write mode acts like conventional pipes with
58 1.1 jdolecek * a kernel buffer. If the buffer is less than PIPE_MINDIRECT, then the
59 1.1 jdolecek * "normal" pipe buffering is done. If the buffer is between PIPE_MINDIRECT
60 1.35 pk * and PIPE_SIZE in size it is mapped read-only into the kernel address space
61 1.35 pk * using the UVM page loan facility from where the receiving process can copy
62 1.35 pk * the data directly from the pages in the sending process.
63 1.1 jdolecek *
64 1.1 jdolecek * The constant PIPE_MINDIRECT is chosen to make sure that buffering will
65 1.1 jdolecek * happen for small transfers so that the system will not spend all of
66 1.1 jdolecek * its time context switching. PIPE_SIZE is constrained by the
67 1.1 jdolecek * amount of kernel virtual memory.
68 1.1 jdolecek */
69 1.19 lukem
70 1.19 lukem #include <sys/cdefs.h>
71 1.125 dsl __KERNEL_RCSID(0, "$NetBSD: sys_pipe.c,v 1.125 2009/12/13 20:02:23 dsl Exp $");
72 1.2 jdolecek
73 1.1 jdolecek #include <sys/param.h>
74 1.1 jdolecek #include <sys/systm.h>
75 1.2 jdolecek #include <sys/proc.h>
76 1.1 jdolecek #include <sys/fcntl.h>
77 1.1 jdolecek #include <sys/file.h>
78 1.1 jdolecek #include <sys/filedesc.h>
79 1.1 jdolecek #include <sys/filio.h>
80 1.24 jdolecek #include <sys/kernel.h>
81 1.1 jdolecek #include <sys/ttycom.h>
82 1.1 jdolecek #include <sys/stat.h>
83 1.1 jdolecek #include <sys/poll.h>
84 1.2 jdolecek #include <sys/signalvar.h>
85 1.2 jdolecek #include <sys/vnode.h>
86 1.2 jdolecek #include <sys/uio.h>
87 1.2 jdolecek #include <sys/select.h>
88 1.2 jdolecek #include <sys/mount.h>
89 1.2 jdolecek #include <sys/syscallargs.h>
90 1.2 jdolecek #include <sys/sysctl.h>
91 1.72 elad #include <sys/kauth.h>
92 1.90 ad #include <sys/atomic.h>
93 1.90 ad #include <sys/pipe.h>
94 1.2 jdolecek
95 1.90 ad #include <uvm/uvm.h>
96 1.1 jdolecek
97 1.115 rmind /*
98 1.115 rmind * Use this to disable direct I/O and decrease the code size:
99 1.115 rmind * #define PIPE_NODIRECT
100 1.115 rmind */
101 1.115 rmind
102 1.119 rmind /* XXX Disabled for now; rare hangs switching between direct/buffered */
103 1.119 rmind #define PIPE_NODIRECT
104 1.119 rmind
105 1.113 rmind static int pipe_read(file_t *, off_t *, struct uio *, kauth_cred_t, int);
106 1.113 rmind static int pipe_write(file_t *, off_t *, struct uio *, kauth_cred_t, int);
107 1.113 rmind static int pipe_close(file_t *);
108 1.113 rmind static int pipe_poll(file_t *, int);
109 1.114 rmind static int pipe_kqfilter(file_t *, struct knote *);
110 1.113 rmind static int pipe_stat(file_t *, struct stat *);
111 1.113 rmind static int pipe_ioctl(file_t *, u_long, void *);
112 1.123 dsl static void pipe_abort(file_t *);
113 1.1 jdolecek
114 1.62 christos static const struct fileops pipeops = {
115 1.109 ad .fo_read = pipe_read,
116 1.109 ad .fo_write = pipe_write,
117 1.109 ad .fo_ioctl = pipe_ioctl,
118 1.109 ad .fo_fcntl = fnullop_fcntl,
119 1.109 ad .fo_poll = pipe_poll,
120 1.109 ad .fo_stat = pipe_stat,
121 1.109 ad .fo_close = pipe_close,
122 1.109 ad .fo_kqfilter = pipe_kqfilter,
123 1.123 dsl .fo_abort = pipe_abort,
124 1.35 pk };
125 1.1 jdolecek
126 1.1 jdolecek /*
127 1.1 jdolecek * Default pipe buffer size(s), this can be kind-of large now because pipe
128 1.1 jdolecek * space is pageable. The pipe code will try to maintain locality of
129 1.1 jdolecek * reference for performance reasons, so small amounts of outstanding I/O
130 1.1 jdolecek * will not wipe the cache.
131 1.1 jdolecek */
132 1.113 rmind #define MINPIPESIZE (PIPE_SIZE / 3)
133 1.113 rmind #define MAXPIPESIZE (2 * PIPE_SIZE / 3)
134 1.1 jdolecek
135 1.1 jdolecek /*
136 1.1 jdolecek * Maximum amount of kva for pipes -- this is kind-of a soft limit, but
137 1.1 jdolecek * is there so that on large systems, we don't exhaust it.
138 1.1 jdolecek */
139 1.113 rmind #define MAXPIPEKVA (8 * 1024 * 1024)
140 1.113 rmind static u_int maxpipekva = MAXPIPEKVA;
141 1.1 jdolecek
142 1.1 jdolecek /*
143 1.1 jdolecek * Limit for direct transfers, we cannot, of course limit
144 1.1 jdolecek * the amount of kva for pipes in general though.
145 1.1 jdolecek */
146 1.113 rmind #define LIMITPIPEKVA (16 * 1024 * 1024)
147 1.113 rmind static u_int limitpipekva = LIMITPIPEKVA;
148 1.1 jdolecek
149 1.1 jdolecek /*
150 1.1 jdolecek * Limit the number of "big" pipes
151 1.1 jdolecek */
152 1.113 rmind #define LIMITBIGPIPES 32
153 1.113 rmind static u_int maxbigpipes = LIMITBIGPIPES;
154 1.113 rmind static u_int nbigpipe = 0;
155 1.1 jdolecek
156 1.2 jdolecek /*
157 1.2 jdolecek * Amount of KVA consumed by pipe buffers.
158 1.2 jdolecek */
159 1.113 rmind static u_int amountpipekva = 0;
160 1.34 thorpej
161 1.122 dsl static void pipeclose(struct pipe *);
162 1.113 rmind static void pipe_free_kmem(struct pipe *);
163 1.122 dsl static int pipe_create(struct pipe **, pool_cache_t);
164 1.113 rmind static int pipelock(struct pipe *, int);
165 1.113 rmind static inline void pipeunlock(struct pipe *);
166 1.113 rmind static void pipeselwakeup(struct pipe *, struct pipe *, int);
167 1.1 jdolecek #ifndef PIPE_NODIRECT
168 1.113 rmind static int pipe_direct_write(file_t *, struct pipe *, struct uio *);
169 1.1 jdolecek #endif
170 1.113 rmind static int pipespace(struct pipe *, int);
171 1.113 rmind static int pipe_ctor(void *, void *, int);
172 1.113 rmind static void pipe_dtor(void *, void *);
173 1.2 jdolecek
174 1.2 jdolecek #ifndef PIPE_NODIRECT
175 1.113 rmind static int pipe_loan_alloc(struct pipe *, int);
176 1.113 rmind static void pipe_loan_free(struct pipe *);
177 1.2 jdolecek #endif /* PIPE_NODIRECT */
178 1.2 jdolecek
179 1.113 rmind static pool_cache_t pipe_wr_cache;
180 1.113 rmind static pool_cache_t pipe_rd_cache;
181 1.82 ad
182 1.82 ad void
183 1.82 ad pipe_init(void)
184 1.82 ad {
185 1.82 ad
186 1.106 ad /* Writer side is not automatically allocated KVA. */
187 1.106 ad pipe_wr_cache = pool_cache_init(sizeof(struct pipe), 0, 0, 0, "pipewr",
188 1.106 ad NULL, IPL_NONE, pipe_ctor, pipe_dtor, NULL);
189 1.106 ad KASSERT(pipe_wr_cache != NULL);
190 1.106 ad
191 1.106 ad /* Reader side gets preallocated KVA. */
192 1.106 ad pipe_rd_cache = pool_cache_init(sizeof(struct pipe), 0, 0, 0, "piperd",
193 1.106 ad NULL, IPL_NONE, pipe_ctor, pipe_dtor, (void *)1);
194 1.106 ad KASSERT(pipe_rd_cache != NULL);
195 1.90 ad }
196 1.90 ad
197 1.90 ad static int
198 1.106 ad pipe_ctor(void *arg, void *obj, int flags)
199 1.90 ad {
200 1.106 ad struct pipe *pipe;
201 1.106 ad vaddr_t va;
202 1.106 ad
203 1.106 ad pipe = obj;
204 1.90 ad
205 1.106 ad memset(pipe, 0, sizeof(struct pipe));
206 1.106 ad if (arg != NULL) {
207 1.106 ad /* Preallocate space. */
208 1.107 enami va = uvm_km_alloc(kernel_map, PIPE_SIZE, 0,
209 1.107 enami UVM_KMF_PAGEABLE | UVM_KMF_WAITVA);
210 1.107 enami KASSERT(va != 0);
211 1.106 ad pipe->pipe_kmem = va;
212 1.106 ad atomic_add_int(&amountpipekva, PIPE_SIZE);
213 1.106 ad }
214 1.106 ad cv_init(&pipe->pipe_rcv, "piperd");
215 1.106 ad cv_init(&pipe->pipe_wcv, "pipewr");
216 1.106 ad cv_init(&pipe->pipe_draincv, "pipedrain");
217 1.106 ad cv_init(&pipe->pipe_lkcv, "pipelk");
218 1.106 ad selinit(&pipe->pipe_sel);
219 1.106 ad pipe->pipe_state = PIPE_SIGNALR;
220 1.90 ad
221 1.90 ad return 0;
222 1.90 ad }
223 1.90 ad
224 1.90 ad static void
225 1.106 ad pipe_dtor(void *arg, void *obj)
226 1.90 ad {
227 1.106 ad struct pipe *pipe;
228 1.90 ad
229 1.106 ad pipe = obj;
230 1.90 ad
231 1.106 ad cv_destroy(&pipe->pipe_rcv);
232 1.106 ad cv_destroy(&pipe->pipe_wcv);
233 1.106 ad cv_destroy(&pipe->pipe_draincv);
234 1.106 ad cv_destroy(&pipe->pipe_lkcv);
235 1.106 ad seldestroy(&pipe->pipe_sel);
236 1.106 ad if (pipe->pipe_kmem != 0) {
237 1.106 ad uvm_km_free(kernel_map, pipe->pipe_kmem, PIPE_SIZE,
238 1.106 ad UVM_KMF_PAGEABLE);
239 1.106 ad atomic_add_int(&amountpipekva, -PIPE_SIZE);
240 1.106 ad }
241 1.82 ad }
242 1.82 ad
243 1.1 jdolecek /*
244 1.1 jdolecek * The pipe system call for the DTYPE_PIPE type of pipes
245 1.1 jdolecek */
246 1.2 jdolecek int
247 1.89 dsl sys_pipe(struct lwp *l, const void *v, register_t *retval)
248 1.1 jdolecek {
249 1.53 dsl struct pipe *rpipe, *wpipe;
250 1.113 rmind file_t *rf, *wf;
251 1.1 jdolecek int fd, error;
252 1.99 ad proc_t *p;
253 1.2 jdolecek
254 1.99 ad p = curproc;
255 1.6 jdolecek rpipe = wpipe = NULL;
256 1.122 dsl if (pipe_create(&rpipe, pipe_rd_cache) ||
257 1.122 dsl pipe_create(&wpipe, pipe_wr_cache)) {
258 1.122 dsl error = ENOMEM;
259 1.122 dsl goto free2;
260 1.6 jdolecek }
261 1.122 dsl rpipe->pipe_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
262 1.122 dsl wpipe->pipe_lock = rpipe->pipe_lock;
263 1.122 dsl mutex_obj_hold(wpipe->pipe_lock);
264 1.6 jdolecek
265 1.99 ad error = fd_allocfile(&rf, &fd);
266 1.2 jdolecek if (error)
267 1.2 jdolecek goto free2;
268 1.2 jdolecek retval[0] = fd;
269 1.2 jdolecek rf->f_flag = FREAD;
270 1.2 jdolecek rf->f_type = DTYPE_PIPE;
271 1.79 christos rf->f_data = (void *)rpipe;
272 1.2 jdolecek rf->f_ops = &pipeops;
273 1.2 jdolecek
274 1.99 ad error = fd_allocfile(&wf, &fd);
275 1.2 jdolecek if (error)
276 1.2 jdolecek goto free3;
277 1.2 jdolecek retval[1] = fd;
278 1.2 jdolecek wf->f_flag = FWRITE;
279 1.2 jdolecek wf->f_type = DTYPE_PIPE;
280 1.79 christos wf->f_data = (void *)wpipe;
281 1.2 jdolecek wf->f_ops = &pipeops;
282 1.2 jdolecek
283 1.2 jdolecek rpipe->pipe_peer = wpipe;
284 1.2 jdolecek wpipe->pipe_peer = rpipe;
285 1.1 jdolecek
286 1.99 ad fd_affix(p, rf, (int)retval[0]);
287 1.99 ad fd_affix(p, wf, (int)retval[1]);
288 1.1 jdolecek return (0);
289 1.2 jdolecek free3:
290 1.99 ad fd_abort(p, rf, (int)retval[0]);
291 1.2 jdolecek free2:
292 1.122 dsl pipeclose(wpipe);
293 1.122 dsl pipeclose(rpipe);
294 1.2 jdolecek
295 1.2 jdolecek return (error);
296 1.1 jdolecek }
297 1.1 jdolecek
298 1.1 jdolecek /*
299 1.1 jdolecek * Allocate kva for pipe circular buffer, the space is pageable
300 1.1 jdolecek * This routine will 'realloc' the size of a pipe safely, if it fails
301 1.1 jdolecek * it will retain the old buffer.
302 1.1 jdolecek * If it fails it will return ENOMEM.
303 1.1 jdolecek */
304 1.1 jdolecek static int
305 1.68 thorpej pipespace(struct pipe *pipe, int size)
306 1.1 jdolecek {
307 1.79 christos void *buffer;
308 1.106 ad
309 1.2 jdolecek /*
310 1.106 ad * Allocate pageable virtual address space. Physical memory is
311 1.35 pk * allocated on demand.
312 1.2 jdolecek */
313 1.106 ad if (size == PIPE_SIZE && pipe->pipe_kmem != 0) {
314 1.106 ad buffer = (void *)pipe->pipe_kmem;
315 1.106 ad } else {
316 1.106 ad buffer = (void *)uvm_km_alloc(kernel_map, round_page(size),
317 1.106 ad 0, UVM_KMF_PAGEABLE);
318 1.106 ad if (buffer == NULL)
319 1.106 ad return (ENOMEM);
320 1.106 ad atomic_add_int(&amountpipekva, size);
321 1.106 ad }
322 1.1 jdolecek
323 1.1 jdolecek /* free old resources if we're resizing */
324 1.35 pk pipe_free_kmem(pipe);
325 1.35 pk pipe->pipe_buffer.buffer = buffer;
326 1.35 pk pipe->pipe_buffer.size = size;
327 1.35 pk pipe->pipe_buffer.in = 0;
328 1.35 pk pipe->pipe_buffer.out = 0;
329 1.35 pk pipe->pipe_buffer.cnt = 0;
330 1.1 jdolecek return (0);
331 1.1 jdolecek }
332 1.1 jdolecek
333 1.1 jdolecek /*
334 1.35 pk * Initialize and allocate VM and memory for pipe.
335 1.1 jdolecek */
336 1.1 jdolecek static int
337 1.122 dsl pipe_create(struct pipe **pipep, pool_cache_t cache)
338 1.1 jdolecek {
339 1.35 pk struct pipe *pipe;
340 1.1 jdolecek int error;
341 1.1 jdolecek
342 1.106 ad pipe = pool_cache_get(cache, PR_WAITOK);
343 1.107 enami KASSERT(pipe != NULL);
344 1.106 ad *pipep = pipe;
345 1.106 ad error = 0;
346 1.111 christos getnanotime(&pipe->pipe_btime);
347 1.111 christos pipe->pipe_atime = pipe->pipe_mtime = pipe->pipe_btime;
348 1.122 dsl pipe->pipe_lock = NULL;
349 1.106 ad if (cache == pipe_rd_cache) {
350 1.106 ad error = pipespace(pipe, PIPE_SIZE);
351 1.106 ad } else {
352 1.106 ad pipe->pipe_buffer.buffer = NULL;
353 1.106 ad pipe->pipe_buffer.size = 0;
354 1.106 ad pipe->pipe_buffer.in = 0;
355 1.106 ad pipe->pipe_buffer.out = 0;
356 1.106 ad pipe->pipe_buffer.cnt = 0;
357 1.106 ad }
358 1.106 ad return error;
359 1.1 jdolecek }
360 1.1 jdolecek
361 1.1 jdolecek /*
362 1.35 pk * Lock a pipe for I/O, blocking other access
363 1.35 pk * Called with pipe spin lock held.
364 1.1 jdolecek */
365 1.35 pk static int
366 1.68 thorpej pipelock(struct pipe *pipe, int catch)
367 1.1 jdolecek {
368 1.80 ad int error;
369 1.1 jdolecek
370 1.90 ad KASSERT(mutex_owned(pipe->pipe_lock));
371 1.35 pk
372 1.67 yamt while (pipe->pipe_state & PIPE_LOCKFL) {
373 1.67 yamt pipe->pipe_state |= PIPE_LWANT;
374 1.80 ad if (catch) {
375 1.90 ad error = cv_wait_sig(&pipe->pipe_lkcv, pipe->pipe_lock);
376 1.80 ad if (error != 0)
377 1.80 ad return error;
378 1.80 ad } else
379 1.90 ad cv_wait(&pipe->pipe_lkcv, pipe->pipe_lock);
380 1.1 jdolecek }
381 1.67 yamt
382 1.67 yamt pipe->pipe_state |= PIPE_LOCKFL;
383 1.67 yamt
384 1.67 yamt return 0;
385 1.1 jdolecek }
386 1.1 jdolecek
387 1.1 jdolecek /*
388 1.1 jdolecek * unlock a pipe I/O lock
389 1.1 jdolecek */
390 1.70 perry static inline void
391 1.68 thorpej pipeunlock(struct pipe *pipe)
392 1.1 jdolecek {
393 1.24 jdolecek
394 1.67 yamt KASSERT(pipe->pipe_state & PIPE_LOCKFL);
395 1.67 yamt
396 1.67 yamt pipe->pipe_state &= ~PIPE_LOCKFL;
397 1.67 yamt if (pipe->pipe_state & PIPE_LWANT) {
398 1.67 yamt pipe->pipe_state &= ~PIPE_LWANT;
399 1.80 ad cv_broadcast(&pipe->pipe_lkcv);
400 1.67 yamt }
401 1.1 jdolecek }
402 1.1 jdolecek
403 1.2 jdolecek /*
404 1.2 jdolecek * Select/poll wakup. This also sends SIGIO to peer connected to
405 1.2 jdolecek * 'sigpipe' side of pipe.
406 1.2 jdolecek */
407 1.35 pk static void
408 1.68 thorpej pipeselwakeup(struct pipe *selp, struct pipe *sigp, int code)
409 1.1 jdolecek {
410 1.43 jdolecek int band;
411 1.27 jdolecek
412 1.43 jdolecek switch (code) {
413 1.42 christos case POLL_IN:
414 1.43 jdolecek band = POLLIN|POLLRDNORM;
415 1.42 christos break;
416 1.42 christos case POLL_OUT:
417 1.43 jdolecek band = POLLOUT|POLLWRNORM;
418 1.42 christos break;
419 1.42 christos case POLL_HUP:
420 1.43 jdolecek band = POLLHUP;
421 1.42 christos break;
422 1.42 christos case POLL_ERR:
423 1.43 jdolecek band = POLLERR;
424 1.42 christos break;
425 1.42 christos default:
426 1.45 christos band = 0;
427 1.42 christos #ifdef DIAGNOSTIC
428 1.42 christos printf("bad siginfo code %d in pipe notification.\n", code);
429 1.42 christos #endif
430 1.42 christos break;
431 1.42 christos }
432 1.43 jdolecek
433 1.98 rmind selnotify(&selp->pipe_sel, band, NOTE_SUBMIT);
434 1.98 rmind
435 1.98 rmind if (sigp == NULL || (sigp->pipe_state & PIPE_ASYNC) == 0)
436 1.98 rmind return;
437 1.98 rmind
438 1.44 christos fownsignal(sigp->pipe_pgid, SIGIO, code, band, selp);
439 1.1 jdolecek }
440 1.1 jdolecek
441 1.2 jdolecek static int
442 1.113 rmind pipe_read(file_t *fp, off_t *offset, struct uio *uio, kauth_cred_t cred,
443 1.77 yamt int flags)
444 1.1 jdolecek {
445 1.1 jdolecek struct pipe *rpipe = (struct pipe *) fp->f_data;
446 1.35 pk struct pipebuf *bp = &rpipe->pipe_buffer;
447 1.95 ad kmutex_t *lock = rpipe->pipe_lock;
448 1.1 jdolecek int error;
449 1.2 jdolecek size_t nread = 0;
450 1.2 jdolecek size_t size;
451 1.2 jdolecek size_t ocnt;
452 1.125 dsl int slept = 0;
453 1.1 jdolecek
454 1.95 ad mutex_enter(lock);
455 1.1 jdolecek ++rpipe->pipe_busy;
456 1.35 pk ocnt = bp->cnt;
457 1.28 jdolecek
458 1.35 pk again:
459 1.1 jdolecek error = pipelock(rpipe, 1);
460 1.1 jdolecek if (error)
461 1.1 jdolecek goto unlocked_error;
462 1.2 jdolecek
463 1.1 jdolecek while (uio->uio_resid) {
464 1.1 jdolecek /*
465 1.113 rmind * Normal pipe buffer receive.
466 1.1 jdolecek */
467 1.35 pk if (bp->cnt > 0) {
468 1.35 pk size = bp->size - bp->out;
469 1.35 pk if (size > bp->cnt)
470 1.35 pk size = bp->cnt;
471 1.2 jdolecek if (size > uio->uio_resid)
472 1.2 jdolecek size = uio->uio_resid;
473 1.1 jdolecek
474 1.95 ad mutex_exit(lock);
475 1.79 christos error = uiomove((char *)bp->buffer + bp->out, size, uio);
476 1.95 ad mutex_enter(lock);
477 1.1 jdolecek if (error)
478 1.1 jdolecek break;
479 1.1 jdolecek
480 1.35 pk bp->out += size;
481 1.35 pk if (bp->out >= bp->size)
482 1.35 pk bp->out = 0;
483 1.1 jdolecek
484 1.35 pk bp->cnt -= size;
485 1.1 jdolecek
486 1.1 jdolecek /*
487 1.1 jdolecek * If there is no more to read in the pipe, reset
488 1.1 jdolecek * its pointers to the beginning. This improves
489 1.1 jdolecek * cache hit stats.
490 1.1 jdolecek */
491 1.35 pk if (bp->cnt == 0) {
492 1.35 pk bp->in = 0;
493 1.35 pk bp->out = 0;
494 1.1 jdolecek }
495 1.1 jdolecek nread += size;
496 1.85 ad continue;
497 1.85 ad }
498 1.85 ad
499 1.1 jdolecek #ifndef PIPE_NODIRECT
500 1.85 ad if ((rpipe->pipe_state & PIPE_DIRECTR) != 0) {
501 1.35 pk /*
502 1.35 pk * Direct copy, bypassing a kernel buffer.
503 1.35 pk */
504 1.113 rmind void *va;
505 1.115 rmind u_int gen;
506 1.35 pk
507 1.35 pk KASSERT(rpipe->pipe_state & PIPE_DIRECTW);
508 1.35 pk
509 1.35 pk size = rpipe->pipe_map.cnt;
510 1.2 jdolecek if (size > uio->uio_resid)
511 1.2 jdolecek size = uio->uio_resid;
512 1.1 jdolecek
513 1.79 christos va = (char *)rpipe->pipe_map.kva + rpipe->pipe_map.pos;
514 1.115 rmind gen = rpipe->pipe_map.egen;
515 1.95 ad mutex_exit(lock);
516 1.115 rmind
517 1.115 rmind /*
518 1.115 rmind * Consume emap and read the data from loaned pages.
519 1.115 rmind */
520 1.115 rmind uvm_emap_consume(gen);
521 1.1 jdolecek error = uiomove(va, size, uio);
522 1.115 rmind
523 1.95 ad mutex_enter(lock);
524 1.1 jdolecek if (error)
525 1.1 jdolecek break;
526 1.1 jdolecek nread += size;
527 1.1 jdolecek rpipe->pipe_map.pos += size;
528 1.1 jdolecek rpipe->pipe_map.cnt -= size;
529 1.1 jdolecek if (rpipe->pipe_map.cnt == 0) {
530 1.35 pk rpipe->pipe_state &= ~PIPE_DIRECTR;
531 1.97 yamt cv_broadcast(&rpipe->pipe_wcv);
532 1.1 jdolecek }
533 1.85 ad continue;
534 1.85 ad }
535 1.1 jdolecek #endif
536 1.85 ad /*
537 1.85 ad * Break if some data was read.
538 1.85 ad */
539 1.90 ad if (nread > 0)
540 1.85 ad break;
541 1.1 jdolecek
542 1.85 ad /*
543 1.113 rmind * Detect EOF condition.
544 1.113 rmind * Read returns 0 on EOF, no need to set error.
545 1.85 ad */
546 1.124 dsl if (rpipe->pipe_state & PIPE_EOF)
547 1.85 ad break;
548 1.36 pk
549 1.85 ad /*
550 1.113 rmind * Don't block on non-blocking I/O.
551 1.85 ad */
552 1.85 ad if (fp->f_flag & FNONBLOCK) {
553 1.85 ad error = EAGAIN;
554 1.85 ad break;
555 1.85 ad }
556 1.1 jdolecek
557 1.85 ad /*
558 1.85 ad * Unlock the pipe buffer for our remaining processing.
559 1.85 ad * We will either break out with an error or we will
560 1.85 ad * sleep and relock to loop.
561 1.85 ad */
562 1.85 ad pipeunlock(rpipe);
563 1.2 jdolecek
564 1.85 ad /*
565 1.85 ad * Re-check to see if more direct writes are pending.
566 1.85 ad */
567 1.85 ad if ((rpipe->pipe_state & PIPE_DIRECTR) != 0)
568 1.85 ad goto again;
569 1.1 jdolecek
570 1.125 dsl #if 1 /* XXX (dsl) I'm sure these aren't needed here ... */
571 1.85 ad /*
572 1.85 ad * We want to read more, wake up select/poll.
573 1.85 ad */
574 1.105 yamt pipeselwakeup(rpipe, rpipe->pipe_peer, POLL_OUT);
575 1.35 pk
576 1.85 ad /*
577 1.85 ad * If the "write-side" is blocked, wake it up now.
578 1.85 ad */
579 1.97 yamt cv_broadcast(&rpipe->pipe_wcv);
580 1.125 dsl #endif
581 1.125 dsl
582 1.125 dsl if (slept) {
583 1.125 dsl error = ERESTART;
584 1.125 dsl goto unlocked_error;
585 1.125 dsl }
586 1.2 jdolecek
587 1.85 ad /* Now wait until the pipe is filled */
588 1.97 yamt error = cv_wait_sig(&rpipe->pipe_rcv, lock);
589 1.85 ad if (error != 0)
590 1.85 ad goto unlocked_error;
591 1.125 dsl slept = 1;
592 1.85 ad goto again;
593 1.1 jdolecek }
594 1.35 pk
595 1.35 pk if (error == 0)
596 1.111 christos getnanotime(&rpipe->pipe_atime);
597 1.1 jdolecek pipeunlock(rpipe);
598 1.1 jdolecek
599 1.1 jdolecek unlocked_error:
600 1.1 jdolecek --rpipe->pipe_busy;
601 1.97 yamt if (rpipe->pipe_busy == 0) {
602 1.97 yamt cv_broadcast(&rpipe->pipe_draincv);
603 1.97 yamt }
604 1.97 yamt if (bp->cnt < MINPIPESIZE) {
605 1.97 yamt cv_broadcast(&rpipe->pipe_wcv);
606 1.1 jdolecek }
607 1.1 jdolecek
608 1.2 jdolecek /*
609 1.2 jdolecek * If anything was read off the buffer, signal to the writer it's
610 1.2 jdolecek * possible to write more data. Also send signal if we are here for the
611 1.2 jdolecek * first time after last write.
612 1.2 jdolecek */
613 1.35 pk if ((bp->size - bp->cnt) >= PIPE_BUF
614 1.35 pk && (ocnt != bp->cnt || (rpipe->pipe_state & PIPE_SIGNALR))) {
615 1.66 christos pipeselwakeup(rpipe, rpipe->pipe_peer, POLL_OUT);
616 1.2 jdolecek rpipe->pipe_state &= ~PIPE_SIGNALR;
617 1.2 jdolecek }
618 1.1 jdolecek
619 1.95 ad mutex_exit(lock);
620 1.1 jdolecek return (error);
621 1.1 jdolecek }
622 1.1 jdolecek
623 1.2 jdolecek #ifndef PIPE_NODIRECT
624 1.2 jdolecek /*
625 1.2 jdolecek * Allocate structure for loan transfer.
626 1.2 jdolecek */
627 1.18 chs static int
628 1.68 thorpej pipe_loan_alloc(struct pipe *wpipe, int npages)
629 1.2 jdolecek {
630 1.18 chs vsize_t len;
631 1.18 chs
632 1.18 chs len = (vsize_t)npages << PAGE_SHIFT;
633 1.95 ad atomic_add_int(&amountpipekva, len);
634 1.65 yamt wpipe->pipe_map.kva = uvm_km_alloc(kernel_map, len, 0,
635 1.65 yamt UVM_KMF_VAONLY | UVM_KMF_WAITVA);
636 1.95 ad if (wpipe->pipe_map.kva == 0) {
637 1.95 ad atomic_add_int(&amountpipekva, -len);
638 1.2 jdolecek return (ENOMEM);
639 1.95 ad }
640 1.2 jdolecek
641 1.2 jdolecek wpipe->pipe_map.npages = npages;
642 1.102 rmind wpipe->pipe_map.pgs = kmem_alloc(npages * sizeof(struct vm_page *),
643 1.102 rmind KM_SLEEP);
644 1.2 jdolecek return (0);
645 1.2 jdolecek }
646 1.2 jdolecek
647 1.2 jdolecek /*
648 1.2 jdolecek * Free resources allocated for loan transfer.
649 1.2 jdolecek */
650 1.2 jdolecek static void
651 1.68 thorpej pipe_loan_free(struct pipe *wpipe)
652 1.2 jdolecek {
653 1.18 chs vsize_t len;
654 1.18 chs
655 1.18 chs len = (vsize_t)wpipe->pipe_map.npages << PAGE_SHIFT;
656 1.115 rmind uvm_emap_remove(wpipe->pipe_map.kva, len); /* XXX */
657 1.65 yamt uvm_km_free(kernel_map, wpipe->pipe_map.kva, len, UVM_KMF_VAONLY);
658 1.22 thorpej wpipe->pipe_map.kva = 0;
659 1.90 ad atomic_add_int(&amountpipekva, -len);
660 1.102 rmind kmem_free(wpipe->pipe_map.pgs,
661 1.102 rmind wpipe->pipe_map.npages * sizeof(struct vm_page *));
662 1.18 chs wpipe->pipe_map.pgs = NULL;
663 1.2 jdolecek }
664 1.2 jdolecek
665 1.2 jdolecek /*
666 1.2 jdolecek * NetBSD direct write, using uvm_loan() mechanism.
667 1.2 jdolecek * This implements the pipe buffer write mechanism. Note that only
668 1.2 jdolecek * a direct write OR a normal pipe write can be pending at any given time.
669 1.2 jdolecek * If there are any characters in the pipe buffer, the direct write will
670 1.2 jdolecek * be deferred until the receiving process grabs all of the bytes from
671 1.2 jdolecek * the pipe buffer. Then the direct mapping write is set-up.
672 1.35 pk *
673 1.35 pk * Called with the long-term pipe lock held.
674 1.2 jdolecek */
675 1.18 chs static int
676 1.113 rmind pipe_direct_write(file_t *fp, struct pipe *wpipe, struct uio *uio)
677 1.2 jdolecek {
678 1.18 chs struct vm_page **pgs;
679 1.115 rmind vaddr_t bbase, base, bend;
680 1.2 jdolecek vsize_t blen, bcnt;
681 1.115 rmind int error, npages;
682 1.5 jdolecek voff_t bpos;
683 1.95 ad kmutex_t *lock = wpipe->pipe_lock;
684 1.5 jdolecek
685 1.90 ad KASSERT(mutex_owned(wpipe->pipe_lock));
686 1.35 pk KASSERT(wpipe->pipe_map.cnt == 0);
687 1.2 jdolecek
688 1.95 ad mutex_exit(lock);
689 1.90 ad
690 1.2 jdolecek /*
691 1.14 jdolecek * Handle first PIPE_CHUNK_SIZE bytes of buffer. Deal with buffers
692 1.14 jdolecek * not aligned to PAGE_SIZE.
693 1.5 jdolecek */
694 1.14 jdolecek bbase = (vaddr_t)uio->uio_iov->iov_base;
695 1.5 jdolecek base = trunc_page(bbase);
696 1.14 jdolecek bend = round_page(bbase + uio->uio_iov->iov_len);
697 1.5 jdolecek blen = bend - base;
698 1.5 jdolecek bpos = bbase - base;
699 1.5 jdolecek
700 1.5 jdolecek if (blen > PIPE_DIRECT_CHUNK) {
701 1.5 jdolecek blen = PIPE_DIRECT_CHUNK;
702 1.5 jdolecek bend = base + blen;
703 1.5 jdolecek bcnt = PIPE_DIRECT_CHUNK - bpos;
704 1.18 chs } else {
705 1.14 jdolecek bcnt = uio->uio_iov->iov_len;
706 1.18 chs }
707 1.18 chs npages = blen >> PAGE_SHIFT;
708 1.5 jdolecek
709 1.5 jdolecek /*
710 1.5 jdolecek * Free the old kva if we need more pages than we have
711 1.5 jdolecek * allocated.
712 1.2 jdolecek */
713 1.35 pk if (wpipe->pipe_map.kva != 0 && npages > wpipe->pipe_map.npages)
714 1.5 jdolecek pipe_loan_free(wpipe);
715 1.2 jdolecek
716 1.5 jdolecek /* Allocate new kva. */
717 1.22 thorpej if (wpipe->pipe_map.kva == 0) {
718 1.18 chs error = pipe_loan_alloc(wpipe, npages);
719 1.90 ad if (error) {
720 1.95 ad mutex_enter(lock);
721 1.35 pk return (error);
722 1.90 ad }
723 1.18 chs }
724 1.18 chs
725 1.5 jdolecek /* Loan the write buffer memory from writer process */
726 1.18 chs pgs = wpipe->pipe_map.pgs;
727 1.71 yamt error = uvm_loan(&uio->uio_vmspace->vm_map, base, blen,
728 1.35 pk pgs, UVM_LOAN_TOPAGE);
729 1.18 chs if (error) {
730 1.35 pk pipe_loan_free(wpipe);
731 1.95 ad mutex_enter(lock);
732 1.61 yamt return (ENOMEM); /* so that caller fallback to ordinary write */
733 1.18 chs }
734 1.18 chs
735 1.115 rmind /* Enter the loaned pages to KVA, produce new emap generation number. */
736 1.115 rmind uvm_emap_enter(wpipe->pipe_map.kva, pgs, npages);
737 1.115 rmind wpipe->pipe_map.egen = uvm_emap_produce();
738 1.2 jdolecek
739 1.35 pk /* Now we can put the pipe in direct write mode */
740 1.35 pk wpipe->pipe_map.pos = bpos;
741 1.35 pk wpipe->pipe_map.cnt = bcnt;
742 1.35 pk
743 1.35 pk /*
744 1.85 ad * But before we can let someone do a direct read, we
745 1.85 ad * have to wait until the pipe is drained. Release the
746 1.85 ad * pipe lock while we wait.
747 1.35 pk */
748 1.95 ad mutex_enter(lock);
749 1.85 ad wpipe->pipe_state |= PIPE_DIRECTW;
750 1.35 pk pipeunlock(wpipe);
751 1.35 pk
752 1.35 pk while (error == 0 && wpipe->pipe_buffer.cnt > 0) {
753 1.97 yamt cv_broadcast(&wpipe->pipe_rcv);
754 1.97 yamt error = cv_wait_sig(&wpipe->pipe_wcv, lock);
755 1.35 pk if (error == 0 && wpipe->pipe_state & PIPE_EOF)
756 1.5 jdolecek error = EPIPE;
757 1.35 pk }
758 1.35 pk
759 1.35 pk /* Pipe is drained; next read will off the direct buffer */
760 1.35 pk wpipe->pipe_state |= PIPE_DIRECTR;
761 1.35 pk
762 1.35 pk /* Wait until the reader is done */
763 1.35 pk while (error == 0 && (wpipe->pipe_state & PIPE_DIRECTR)) {
764 1.97 yamt cv_broadcast(&wpipe->pipe_rcv);
765 1.66 christos pipeselwakeup(wpipe, wpipe, POLL_IN);
766 1.97 yamt error = cv_wait_sig(&wpipe->pipe_wcv, lock);
767 1.35 pk if (error == 0 && wpipe->pipe_state & PIPE_EOF)
768 1.35 pk error = EPIPE;
769 1.5 jdolecek }
770 1.5 jdolecek
771 1.35 pk /* Take pipe out of direct write mode */
772 1.35 pk wpipe->pipe_state &= ~(PIPE_DIRECTW | PIPE_DIRECTR);
773 1.2 jdolecek
774 1.35 pk /* Acquire the pipe lock and cleanup */
775 1.35 pk (void)pipelock(wpipe, 0);
776 1.95 ad mutex_exit(lock);
777 1.85 ad
778 1.21 chs if (pgs != NULL) {
779 1.115 rmind /* XXX: uvm_emap_remove */
780 1.18 chs uvm_unloan(pgs, npages, UVM_LOAN_TOPAGE);
781 1.21 chs }
782 1.5 jdolecek if (error || amountpipekva > maxpipekva)
783 1.5 jdolecek pipe_loan_free(wpipe);
784 1.5 jdolecek
785 1.95 ad mutex_enter(lock);
786 1.15 jdolecek if (error) {
787 1.66 christos pipeselwakeup(wpipe, wpipe, POLL_ERR);
788 1.2 jdolecek
789 1.5 jdolecek /*
790 1.15 jdolecek * If nothing was read from what we offered, return error
791 1.18 chs * straight on. Otherwise update uio resid first. Caller
792 1.15 jdolecek * will deal with the error condition, returning short
793 1.15 jdolecek * write, error, or restarting the write(2) as appropriate.
794 1.5 jdolecek */
795 1.15 jdolecek if (wpipe->pipe_map.cnt == bcnt) {
796 1.35 pk wpipe->pipe_map.cnt = 0;
797 1.97 yamt cv_broadcast(&wpipe->pipe_wcv);
798 1.15 jdolecek return (error);
799 1.2 jdolecek }
800 1.2 jdolecek
801 1.15 jdolecek bcnt -= wpipe->pipe_map.cnt;
802 1.5 jdolecek }
803 1.2 jdolecek
804 1.18 chs uio->uio_resid -= bcnt;
805 1.8 jdolecek /* uio_offset not updated, not set/used for write(2) */
806 1.18 chs uio->uio_iov->iov_base = (char *)uio->uio_iov->iov_base + bcnt;
807 1.14 jdolecek uio->uio_iov->iov_len -= bcnt;
808 1.14 jdolecek if (uio->uio_iov->iov_len == 0) {
809 1.14 jdolecek uio->uio_iov++;
810 1.14 jdolecek uio->uio_iovcnt--;
811 1.14 jdolecek }
812 1.2 jdolecek
813 1.35 pk wpipe->pipe_map.cnt = 0;
814 1.15 jdolecek return (error);
815 1.2 jdolecek }
816 1.2 jdolecek #endif /* !PIPE_NODIRECT */
817 1.2 jdolecek
818 1.2 jdolecek static int
819 1.113 rmind pipe_write(file_t *fp, off_t *offset, struct uio *uio, kauth_cred_t cred,
820 1.77 yamt int flags)
821 1.1 jdolecek {
822 1.1 jdolecek struct pipe *wpipe, *rpipe;
823 1.35 pk struct pipebuf *bp;
824 1.95 ad kmutex_t *lock;
825 1.35 pk int error;
826 1.125 dsl int slept = 0;
827 1.1 jdolecek
828 1.35 pk /* We want to write to our peer */
829 1.1 jdolecek rpipe = (struct pipe *) fp->f_data;
830 1.95 ad lock = rpipe->pipe_lock;
831 1.90 ad error = 0;
832 1.35 pk
833 1.95 ad mutex_enter(lock);
834 1.1 jdolecek wpipe = rpipe->pipe_peer;
835 1.1 jdolecek
836 1.1 jdolecek /*
837 1.35 pk * Detect loss of pipe read side, issue SIGPIPE if lost.
838 1.1 jdolecek */
839 1.95 ad if (wpipe == NULL || (wpipe->pipe_state & PIPE_EOF) != 0) {
840 1.95 ad mutex_exit(lock);
841 1.90 ad return EPIPE;
842 1.24 jdolecek }
843 1.1 jdolecek ++wpipe->pipe_busy;
844 1.1 jdolecek
845 1.35 pk /* Aquire the long-term pipe lock */
846 1.95 ad if ((error = pipelock(wpipe, 1)) != 0) {
847 1.35 pk --wpipe->pipe_busy;
848 1.93 yamt if (wpipe->pipe_busy == 0) {
849 1.97 yamt cv_broadcast(&wpipe->pipe_draincv);
850 1.35 pk }
851 1.95 ad mutex_exit(lock);
852 1.35 pk return (error);
853 1.35 pk }
854 1.35 pk
855 1.35 pk bp = &wpipe->pipe_buffer;
856 1.35 pk
857 1.1 jdolecek /*
858 1.35 pk * If it is advantageous to resize the pipe buffer, do so.
859 1.1 jdolecek */
860 1.1 jdolecek if ((uio->uio_resid > PIPE_SIZE) &&
861 1.35 pk (nbigpipe < maxbigpipes) &&
862 1.2 jdolecek #ifndef PIPE_NODIRECT
863 1.35 pk (wpipe->pipe_state & PIPE_DIRECTW) == 0 &&
864 1.2 jdolecek #endif
865 1.35 pk (bp->size <= PIPE_SIZE) && (bp->cnt == 0)) {
866 1.1 jdolecek
867 1.35 pk if (pipespace(wpipe, BIG_PIPE_SIZE) == 0)
868 1.90 ad atomic_inc_uint(&nbigpipe);
869 1.24 jdolecek }
870 1.1 jdolecek
871 1.1 jdolecek while (uio->uio_resid) {
872 1.26 thorpej size_t space;
873 1.1 jdolecek
874 1.1 jdolecek #ifndef PIPE_NODIRECT
875 1.1 jdolecek /*
876 1.35 pk * Pipe buffered writes cannot be coincidental with
877 1.35 pk * direct writes. Also, only one direct write can be
878 1.35 pk * in progress at any one time. We wait until the currently
879 1.35 pk * executing direct write is completed before continuing.
880 1.35 pk *
881 1.35 pk * We break out if a signal occurs or the reader goes away.
882 1.35 pk */
883 1.35 pk while (error == 0 && wpipe->pipe_state & PIPE_DIRECTW) {
884 1.97 yamt cv_broadcast(&wpipe->pipe_rcv);
885 1.35 pk pipeunlock(wpipe);
886 1.97 yamt error = cv_wait_sig(&wpipe->pipe_wcv, lock);
887 1.35 pk (void)pipelock(wpipe, 0);
888 1.35 pk if (wpipe->pipe_state & PIPE_EOF)
889 1.35 pk error = EPIPE;
890 1.35 pk }
891 1.35 pk if (error)
892 1.35 pk break;
893 1.35 pk
894 1.35 pk /*
895 1.1 jdolecek * If the transfer is large, we can gain performance if
896 1.1 jdolecek * we do process-to-process copies directly.
897 1.1 jdolecek * If the write is non-blocking, we don't use the
898 1.1 jdolecek * direct write mechanism.
899 1.1 jdolecek *
900 1.1 jdolecek * The direct write mechanism will detect the reader going
901 1.1 jdolecek * away on us.
902 1.1 jdolecek */
903 1.14 jdolecek if ((uio->uio_iov->iov_len >= PIPE_MINDIRECT) &&
904 1.1 jdolecek (fp->f_flag & FNONBLOCK) == 0 &&
905 1.2 jdolecek (wpipe->pipe_map.kva || (amountpipekva < limitpipekva))) {
906 1.42 christos error = pipe_direct_write(fp, wpipe, uio);
907 1.5 jdolecek
908 1.5 jdolecek /*
909 1.49 wiz * Break out if error occurred, unless it's ENOMEM.
910 1.14 jdolecek * ENOMEM means we failed to allocate some resources
911 1.14 jdolecek * for direct write, so we just fallback to ordinary
912 1.14 jdolecek * write. If the direct write was successful,
913 1.14 jdolecek * process rest of data via ordinary write.
914 1.5 jdolecek */
915 1.35 pk if (error == 0)
916 1.14 jdolecek continue;
917 1.14 jdolecek
918 1.5 jdolecek if (error != ENOMEM)
919 1.1 jdolecek break;
920 1.1 jdolecek }
921 1.2 jdolecek #endif /* PIPE_NODIRECT */
922 1.1 jdolecek
923 1.35 pk space = bp->size - bp->cnt;
924 1.1 jdolecek
925 1.1 jdolecek /* Writes of size <= PIPE_BUF must be atomic. */
926 1.14 jdolecek if ((space < uio->uio_resid) && (uio->uio_resid <= PIPE_BUF))
927 1.1 jdolecek space = 0;
928 1.1 jdolecek
929 1.16 mycroft if (space > 0) {
930 1.2 jdolecek int size; /* Transfer size */
931 1.2 jdolecek int segsize; /* first segment to transfer */
932 1.2 jdolecek
933 1.2 jdolecek /*
934 1.2 jdolecek * Transfer size is minimum of uio transfer
935 1.2 jdolecek * and free space in pipe buffer.
936 1.2 jdolecek */
937 1.2 jdolecek if (space > uio->uio_resid)
938 1.2 jdolecek size = uio->uio_resid;
939 1.2 jdolecek else
940 1.2 jdolecek size = space;
941 1.2 jdolecek /*
942 1.63 perry * First segment to transfer is minimum of
943 1.2 jdolecek * transfer size and contiguous space in
944 1.2 jdolecek * pipe buffer. If first segment to transfer
945 1.2 jdolecek * is less than the transfer size, we've got
946 1.2 jdolecek * a wraparound in the buffer.
947 1.2 jdolecek */
948 1.35 pk segsize = bp->size - bp->in;
949 1.2 jdolecek if (segsize > size)
950 1.2 jdolecek segsize = size;
951 1.18 chs
952 1.2 jdolecek /* Transfer first segment */
953 1.95 ad mutex_exit(lock);
954 1.79 christos error = uiomove((char *)bp->buffer + bp->in, segsize,
955 1.79 christos uio);
956 1.18 chs
957 1.2 jdolecek if (error == 0 && segsize < size) {
958 1.63 perry /*
959 1.2 jdolecek * Transfer remaining part now, to
960 1.2 jdolecek * support atomic writes. Wraparound
961 1.2 jdolecek * happened.
962 1.2 jdolecek */
963 1.113 rmind KASSERT(bp->in + segsize == bp->size);
964 1.79 christos error = uiomove(bp->buffer,
965 1.79 christos size - segsize, uio);
966 1.2 jdolecek }
967 1.95 ad mutex_enter(lock);
968 1.35 pk if (error)
969 1.35 pk break;
970 1.35 pk
971 1.35 pk bp->in += size;
972 1.35 pk if (bp->in >= bp->size) {
973 1.113 rmind KASSERT(bp->in == size - segsize + bp->size);
974 1.35 pk bp->in = size - segsize;
975 1.35 pk }
976 1.18 chs
977 1.35 pk bp->cnt += size;
978 1.113 rmind KASSERT(bp->cnt <= bp->size);
979 1.1 jdolecek } else {
980 1.1 jdolecek /*
981 1.1 jdolecek * If the "read-side" has been blocked, wake it up now.
982 1.1 jdolecek */
983 1.97 yamt cv_broadcast(&wpipe->pipe_rcv);
984 1.1 jdolecek
985 1.1 jdolecek /*
986 1.113 rmind * Don't block on non-blocking I/O.
987 1.1 jdolecek */
988 1.1 jdolecek if (fp->f_flag & FNONBLOCK) {
989 1.1 jdolecek error = EAGAIN;
990 1.1 jdolecek break;
991 1.1 jdolecek }
992 1.1 jdolecek
993 1.1 jdolecek /*
994 1.1 jdolecek * We have no more space and have something to offer,
995 1.1 jdolecek * wake up select/poll.
996 1.1 jdolecek */
997 1.35 pk if (bp->cnt)
998 1.105 yamt pipeselwakeup(wpipe, wpipe, POLL_IN);
999 1.1 jdolecek
1000 1.125 dsl if (slept) {
1001 1.125 dsl error = ERESTART;
1002 1.125 dsl break;
1003 1.125 dsl }
1004 1.125 dsl
1005 1.35 pk pipeunlock(wpipe);
1006 1.97 yamt error = cv_wait_sig(&wpipe->pipe_wcv, lock);
1007 1.35 pk (void)pipelock(wpipe, 0);
1008 1.1 jdolecek if (error != 0)
1009 1.1 jdolecek break;
1010 1.1 jdolecek /*
1011 1.1 jdolecek * If read side wants to go away, we just issue a signal
1012 1.1 jdolecek * to ourselves.
1013 1.1 jdolecek */
1014 1.1 jdolecek if (wpipe->pipe_state & PIPE_EOF) {
1015 1.1 jdolecek error = EPIPE;
1016 1.1 jdolecek break;
1017 1.18 chs }
1018 1.125 dsl slept = 1;
1019 1.1 jdolecek }
1020 1.1 jdolecek }
1021 1.1 jdolecek
1022 1.1 jdolecek --wpipe->pipe_busy;
1023 1.97 yamt if (wpipe->pipe_busy == 0) {
1024 1.97 yamt cv_broadcast(&wpipe->pipe_draincv);
1025 1.97 yamt }
1026 1.97 yamt if (bp->cnt > 0) {
1027 1.97 yamt cv_broadcast(&wpipe->pipe_rcv);
1028 1.1 jdolecek }
1029 1.1 jdolecek
1030 1.1 jdolecek /*
1031 1.1 jdolecek * Don't return EPIPE if I/O was successful
1032 1.1 jdolecek */
1033 1.35 pk if (error == EPIPE && bp->cnt == 0 && uio->uio_resid == 0)
1034 1.1 jdolecek error = 0;
1035 1.1 jdolecek
1036 1.1 jdolecek if (error == 0)
1037 1.110 christos getnanotime(&wpipe->pipe_mtime);
1038 1.1 jdolecek
1039 1.1 jdolecek /*
1040 1.2 jdolecek * We have something to offer, wake up select/poll.
1041 1.2 jdolecek * wpipe->pipe_map.cnt is always 0 in this point (direct write
1042 1.14 jdolecek * is only done synchronously), so check only wpipe->pipe_buffer.cnt
1043 1.1 jdolecek */
1044 1.35 pk if (bp->cnt)
1045 1.105 yamt pipeselwakeup(wpipe, wpipe, POLL_IN);
1046 1.1 jdolecek
1047 1.2 jdolecek /*
1048 1.2 jdolecek * Arrange for next read(2) to do a signal.
1049 1.2 jdolecek */
1050 1.2 jdolecek wpipe->pipe_state |= PIPE_SIGNALR;
1051 1.2 jdolecek
1052 1.35 pk pipeunlock(wpipe);
1053 1.95 ad mutex_exit(lock);
1054 1.1 jdolecek return (error);
1055 1.1 jdolecek }
1056 1.1 jdolecek
1057 1.1 jdolecek /*
1058 1.113 rmind * We implement a very minimal set of ioctls for compatibility with sockets.
1059 1.1 jdolecek */
1060 1.1 jdolecek int
1061 1.113 rmind pipe_ioctl(file_t *fp, u_long cmd, void *data)
1062 1.1 jdolecek {
1063 1.99 ad struct pipe *pipe = fp->f_data;
1064 1.95 ad kmutex_t *lock = pipe->pipe_lock;
1065 1.1 jdolecek
1066 1.1 jdolecek switch (cmd) {
1067 1.1 jdolecek
1068 1.1 jdolecek case FIONBIO:
1069 1.1 jdolecek return (0);
1070 1.1 jdolecek
1071 1.1 jdolecek case FIOASYNC:
1072 1.95 ad mutex_enter(lock);
1073 1.1 jdolecek if (*(int *)data) {
1074 1.35 pk pipe->pipe_state |= PIPE_ASYNC;
1075 1.1 jdolecek } else {
1076 1.35 pk pipe->pipe_state &= ~PIPE_ASYNC;
1077 1.1 jdolecek }
1078 1.95 ad mutex_exit(lock);
1079 1.1 jdolecek return (0);
1080 1.1 jdolecek
1081 1.1 jdolecek case FIONREAD:
1082 1.95 ad mutex_enter(lock);
1083 1.2 jdolecek #ifndef PIPE_NODIRECT
1084 1.35 pk if (pipe->pipe_state & PIPE_DIRECTW)
1085 1.35 pk *(int *)data = pipe->pipe_map.cnt;
1086 1.1 jdolecek else
1087 1.2 jdolecek #endif
1088 1.35 pk *(int *)data = pipe->pipe_buffer.cnt;
1089 1.95 ad mutex_exit(lock);
1090 1.1 jdolecek return (0);
1091 1.1 jdolecek
1092 1.59 wrstuden case FIONWRITE:
1093 1.59 wrstuden /* Look at other side */
1094 1.59 wrstuden pipe = pipe->pipe_peer;
1095 1.95 ad mutex_enter(lock);
1096 1.59 wrstuden #ifndef PIPE_NODIRECT
1097 1.59 wrstuden if (pipe->pipe_state & PIPE_DIRECTW)
1098 1.59 wrstuden *(int *)data = pipe->pipe_map.cnt;
1099 1.59 wrstuden else
1100 1.59 wrstuden #endif
1101 1.59 wrstuden *(int *)data = pipe->pipe_buffer.cnt;
1102 1.95 ad mutex_exit(lock);
1103 1.59 wrstuden return (0);
1104 1.59 wrstuden
1105 1.59 wrstuden case FIONSPACE:
1106 1.59 wrstuden /* Look at other side */
1107 1.59 wrstuden pipe = pipe->pipe_peer;
1108 1.95 ad mutex_enter(lock);
1109 1.59 wrstuden #ifndef PIPE_NODIRECT
1110 1.59 wrstuden /*
1111 1.59 wrstuden * If we're in direct-mode, we don't really have a
1112 1.59 wrstuden * send queue, and any other write will block. Thus
1113 1.59 wrstuden * zero seems like the best answer.
1114 1.59 wrstuden */
1115 1.59 wrstuden if (pipe->pipe_state & PIPE_DIRECTW)
1116 1.59 wrstuden *(int *)data = 0;
1117 1.59 wrstuden else
1118 1.59 wrstuden #endif
1119 1.59 wrstuden *(int *)data = pipe->pipe_buffer.size -
1120 1.82 ad pipe->pipe_buffer.cnt;
1121 1.95 ad mutex_exit(lock);
1122 1.59 wrstuden return (0);
1123 1.59 wrstuden
1124 1.2 jdolecek case TIOCSPGRP:
1125 1.43 jdolecek case FIOSETOWN:
1126 1.99 ad return fsetown(&pipe->pipe_pgid, cmd, data);
1127 1.2 jdolecek
1128 1.2 jdolecek case TIOCGPGRP:
1129 1.43 jdolecek case FIOGETOWN:
1130 1.99 ad return fgetown(pipe->pipe_pgid, cmd, data);
1131 1.1 jdolecek
1132 1.1 jdolecek }
1133 1.25 atatat return (EPASSTHROUGH);
1134 1.1 jdolecek }
1135 1.1 jdolecek
1136 1.1 jdolecek int
1137 1.113 rmind pipe_poll(file_t *fp, int events)
1138 1.1 jdolecek {
1139 1.99 ad struct pipe *rpipe = fp->f_data;
1140 1.1 jdolecek struct pipe *wpipe;
1141 1.35 pk int eof = 0;
1142 1.1 jdolecek int revents = 0;
1143 1.1 jdolecek
1144 1.90 ad mutex_enter(rpipe->pipe_lock);
1145 1.1 jdolecek wpipe = rpipe->pipe_peer;
1146 1.35 pk
1147 1.1 jdolecek if (events & (POLLIN | POLLRDNORM))
1148 1.2 jdolecek if ((rpipe->pipe_buffer.cnt > 0) ||
1149 1.2 jdolecek #ifndef PIPE_NODIRECT
1150 1.35 pk (rpipe->pipe_state & PIPE_DIRECTR) ||
1151 1.2 jdolecek #endif
1152 1.1 jdolecek (rpipe->pipe_state & PIPE_EOF))
1153 1.1 jdolecek revents |= events & (POLLIN | POLLRDNORM);
1154 1.1 jdolecek
1155 1.35 pk eof |= (rpipe->pipe_state & PIPE_EOF);
1156 1.35 pk
1157 1.35 pk if (wpipe == NULL)
1158 1.35 pk revents |= events & (POLLOUT | POLLWRNORM);
1159 1.35 pk else {
1160 1.35 pk if (events & (POLLOUT | POLLWRNORM))
1161 1.35 pk if ((wpipe->pipe_state & PIPE_EOF) || (
1162 1.2 jdolecek #ifndef PIPE_NODIRECT
1163 1.35 pk (wpipe->pipe_state & PIPE_DIRECTW) == 0 &&
1164 1.2 jdolecek #endif
1165 1.35 pk (wpipe->pipe_buffer.size - wpipe->pipe_buffer.cnt) >= PIPE_BUF))
1166 1.35 pk revents |= events & (POLLOUT | POLLWRNORM);
1167 1.1 jdolecek
1168 1.35 pk eof |= (wpipe->pipe_state & PIPE_EOF);
1169 1.35 pk }
1170 1.35 pk
1171 1.35 pk if (wpipe == NULL || eof)
1172 1.1 jdolecek revents |= POLLHUP;
1173 1.1 jdolecek
1174 1.1 jdolecek if (revents == 0) {
1175 1.35 pk if (events & (POLLIN | POLLRDNORM))
1176 1.99 ad selrecord(curlwp, &rpipe->pipe_sel);
1177 1.1 jdolecek
1178 1.35 pk if (events & (POLLOUT | POLLWRNORM))
1179 1.99 ad selrecord(curlwp, &wpipe->pipe_sel);
1180 1.1 jdolecek }
1181 1.90 ad mutex_exit(rpipe->pipe_lock);
1182 1.1 jdolecek
1183 1.1 jdolecek return (revents);
1184 1.1 jdolecek }
1185 1.1 jdolecek
1186 1.1 jdolecek static int
1187 1.113 rmind pipe_stat(file_t *fp, struct stat *ub)
1188 1.1 jdolecek {
1189 1.99 ad struct pipe *pipe = fp->f_data;
1190 1.1 jdolecek
1191 1.112 christos mutex_enter(pipe->pipe_lock);
1192 1.110 christos memset(ub, 0, sizeof(*ub));
1193 1.32 jdolecek ub->st_mode = S_IFIFO | S_IRUSR | S_IWUSR;
1194 1.1 jdolecek ub->st_blksize = pipe->pipe_buffer.size;
1195 1.64 christos if (ub->st_blksize == 0 && pipe->pipe_peer)
1196 1.64 christos ub->st_blksize = pipe->pipe_peer->pipe_buffer.size;
1197 1.1 jdolecek ub->st_size = pipe->pipe_buffer.cnt;
1198 1.2 jdolecek ub->st_blocks = (ub->st_size) ? 1 : 0;
1199 1.110 christos ub->st_atimespec = pipe->pipe_atime;
1200 1.110 christos ub->st_mtimespec = pipe->pipe_mtime;
1201 1.111 christos ub->st_ctimespec = ub->st_birthtimespec = pipe->pipe_btime;
1202 1.72 elad ub->st_uid = kauth_cred_geteuid(fp->f_cred);
1203 1.72 elad ub->st_gid = kauth_cred_getegid(fp->f_cred);
1204 1.82 ad
1205 1.1 jdolecek /*
1206 1.1 jdolecek * Left as 0: st_dev, st_ino, st_nlink, st_rdev, st_flags, st_gen.
1207 1.1 jdolecek * XXX (st_dev, st_ino) should be unique.
1208 1.1 jdolecek */
1209 1.112 christos mutex_exit(pipe->pipe_lock);
1210 1.112 christos return 0;
1211 1.1 jdolecek }
1212 1.1 jdolecek
1213 1.1 jdolecek static int
1214 1.113 rmind pipe_close(file_t *fp)
1215 1.1 jdolecek {
1216 1.99 ad struct pipe *pipe = fp->f_data;
1217 1.1 jdolecek
1218 1.1 jdolecek fp->f_data = NULL;
1219 1.122 dsl pipeclose(pipe);
1220 1.1 jdolecek return (0);
1221 1.1 jdolecek }
1222 1.1 jdolecek
1223 1.1 jdolecek static void
1224 1.123 dsl pipe_abort(file_t *fp)
1225 1.123 dsl {
1226 1.123 dsl struct pipe *pipe = fp->f_data;
1227 1.123 dsl
1228 1.124 dsl /*
1229 1.124 dsl * Unblock blocked reads/writes in order to allow close() to complete.
1230 1.124 dsl * This isn't going to work yet!
1231 1.124 dsl * The underlying problem is that only the 'fd' in question needs
1232 1.124 dsl * its operations terminating, the pipe itself my be open via
1233 1.124 dsl * other fd.
1234 1.124 dsl */
1235 1.123 dsl mutex_enter(pipe->pipe_lock);
1236 1.123 dsl cv_broadcast(&pipe->pipe_rcv);
1237 1.123 dsl cv_broadcast(&pipe->pipe_wcv);
1238 1.123 dsl mutex_exit(pipe->pipe_lock);
1239 1.123 dsl }
1240 1.123 dsl
1241 1.123 dsl static void
1242 1.68 thorpej pipe_free_kmem(struct pipe *pipe)
1243 1.1 jdolecek {
1244 1.1 jdolecek
1245 1.35 pk if (pipe->pipe_buffer.buffer != NULL) {
1246 1.106 ad if (pipe->pipe_buffer.size > PIPE_SIZE) {
1247 1.90 ad atomic_dec_uint(&nbigpipe);
1248 1.106 ad }
1249 1.106 ad if (pipe->pipe_buffer.buffer != (void *)pipe->pipe_kmem) {
1250 1.106 ad uvm_km_free(kernel_map,
1251 1.106 ad (vaddr_t)pipe->pipe_buffer.buffer,
1252 1.106 ad pipe->pipe_buffer.size, UVM_KMF_PAGEABLE);
1253 1.106 ad atomic_add_int(&amountpipekva,
1254 1.106 ad -pipe->pipe_buffer.size);
1255 1.106 ad }
1256 1.35 pk pipe->pipe_buffer.buffer = NULL;
1257 1.1 jdolecek }
1258 1.1 jdolecek #ifndef PIPE_NODIRECT
1259 1.35 pk if (pipe->pipe_map.kva != 0) {
1260 1.35 pk pipe_loan_free(pipe);
1261 1.35 pk pipe->pipe_map.cnt = 0;
1262 1.35 pk pipe->pipe_map.kva = 0;
1263 1.35 pk pipe->pipe_map.pos = 0;
1264 1.35 pk pipe->pipe_map.npages = 0;
1265 1.1 jdolecek }
1266 1.2 jdolecek #endif /* !PIPE_NODIRECT */
1267 1.1 jdolecek }
1268 1.1 jdolecek
1269 1.1 jdolecek /*
1270 1.113 rmind * Shutdown the pipe.
1271 1.1 jdolecek */
1272 1.1 jdolecek static void
1273 1.122 dsl pipeclose(struct pipe *pipe)
1274 1.1 jdolecek {
1275 1.95 ad kmutex_t *lock;
1276 1.1 jdolecek struct pipe *ppipe;
1277 1.1 jdolecek
1278 1.35 pk if (pipe == NULL)
1279 1.2 jdolecek return;
1280 1.99 ad
1281 1.99 ad KASSERT(cv_is_valid(&pipe->pipe_rcv));
1282 1.99 ad KASSERT(cv_is_valid(&pipe->pipe_wcv));
1283 1.99 ad KASSERT(cv_is_valid(&pipe->pipe_draincv));
1284 1.99 ad KASSERT(cv_is_valid(&pipe->pipe_lkcv));
1285 1.99 ad
1286 1.95 ad lock = pipe->pipe_lock;
1287 1.122 dsl if (lock == NULL)
1288 1.122 dsl /* Must have failed during create */
1289 1.122 dsl goto free_resources;
1290 1.122 dsl
1291 1.95 ad mutex_enter(lock);
1292 1.66 christos pipeselwakeup(pipe, pipe, POLL_HUP);
1293 1.1 jdolecek
1294 1.2 jdolecek /*
1295 1.2 jdolecek * If the other side is blocked, wake it up saying that
1296 1.2 jdolecek * we want to close it down.
1297 1.2 jdolecek */
1298 1.66 christos pipe->pipe_state |= PIPE_EOF;
1299 1.82 ad if (pipe->pipe_busy) {
1300 1.82 ad while (pipe->pipe_busy) {
1301 1.97 yamt cv_broadcast(&pipe->pipe_wcv);
1302 1.97 yamt cv_wait_sig(&pipe->pipe_draincv, lock);
1303 1.82 ad }
1304 1.2 jdolecek }
1305 1.1 jdolecek
1306 1.2 jdolecek /*
1307 1.113 rmind * Disconnect from peer.
1308 1.2 jdolecek */
1309 1.35 pk if ((ppipe = pipe->pipe_peer) != NULL) {
1310 1.66 christos pipeselwakeup(ppipe, ppipe, POLL_HUP);
1311 1.2 jdolecek ppipe->pipe_state |= PIPE_EOF;
1312 1.97 yamt cv_broadcast(&ppipe->pipe_rcv);
1313 1.2 jdolecek ppipe->pipe_peer = NULL;
1314 1.1 jdolecek }
1315 1.35 pk
1316 1.108 enami /*
1317 1.108 enami * Any knote objects still left in the list are
1318 1.108 enami * the one attached by peer. Since no one will
1319 1.108 enami * traverse this list, we just clear it.
1320 1.108 enami */
1321 1.108 enami SLIST_INIT(&pipe->pipe_sel.sel_klist);
1322 1.108 enami
1323 1.67 yamt KASSERT((pipe->pipe_state & PIPE_LOCKFL) == 0);
1324 1.95 ad mutex_exit(lock);
1325 1.122 dsl mutex_obj_free(lock);
1326 1.35 pk
1327 1.2 jdolecek /*
1328 1.113 rmind * Free resources.
1329 1.2 jdolecek */
1330 1.122 dsl free_resources:
1331 1.106 ad pipe->pipe_pgid = 0;
1332 1.106 ad pipe->pipe_state = PIPE_SIGNALR;
1333 1.35 pk pipe_free_kmem(pipe);
1334 1.106 ad if (pipe->pipe_kmem != 0) {
1335 1.106 ad pool_cache_put(pipe_rd_cache, pipe);
1336 1.106 ad } else {
1337 1.106 ad pool_cache_put(pipe_wr_cache, pipe);
1338 1.106 ad }
1339 1.1 jdolecek }
1340 1.1 jdolecek
1341 1.27 jdolecek static void
1342 1.27 jdolecek filt_pipedetach(struct knote *kn)
1343 1.1 jdolecek {
1344 1.92 ad struct pipe *pipe;
1345 1.92 ad kmutex_t *lock;
1346 1.92 ad
1347 1.99 ad pipe = ((file_t *)kn->kn_obj)->f_data;
1348 1.92 ad lock = pipe->pipe_lock;
1349 1.1 jdolecek
1350 1.92 ad mutex_enter(lock);
1351 1.82 ad
1352 1.27 jdolecek switch(kn->kn_filter) {
1353 1.1 jdolecek case EVFILT_WRITE:
1354 1.113 rmind /* Need the peer structure, not our own. */
1355 1.35 pk pipe = pipe->pipe_peer;
1356 1.27 jdolecek
1357 1.113 rmind /* If reader end already closed, just return. */
1358 1.82 ad if (pipe == NULL) {
1359 1.92 ad mutex_exit(lock);
1360 1.27 jdolecek return;
1361 1.82 ad }
1362 1.27 jdolecek
1363 1.1 jdolecek break;
1364 1.1 jdolecek default:
1365 1.113 rmind /* Nothing to do. */
1366 1.29 kristerw break;
1367 1.1 jdolecek }
1368 1.24 jdolecek
1369 1.113 rmind KASSERT(kn->kn_hook == pipe);
1370 1.35 pk SLIST_REMOVE(&pipe->pipe_sel.sel_klist, kn, knote, kn_selnext);
1371 1.92 ad mutex_exit(lock);
1372 1.1 jdolecek }
1373 1.1 jdolecek
1374 1.1 jdolecek static int
1375 1.1 jdolecek filt_piperead(struct knote *kn, long hint)
1376 1.1 jdolecek {
1377 1.99 ad struct pipe *rpipe = ((file_t *)kn->kn_obj)->f_data;
1378 1.82 ad struct pipe *wpipe;
1379 1.82 ad
1380 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1381 1.90 ad mutex_enter(rpipe->pipe_lock);
1382 1.83 ad }
1383 1.82 ad wpipe = rpipe->pipe_peer;
1384 1.83 ad kn->kn_data = rpipe->pipe_buffer.cnt;
1385 1.1 jdolecek
1386 1.1 jdolecek if ((kn->kn_data == 0) && (rpipe->pipe_state & PIPE_DIRECTW))
1387 1.1 jdolecek kn->kn_data = rpipe->pipe_map.cnt;
1388 1.1 jdolecek
1389 1.1 jdolecek if ((rpipe->pipe_state & PIPE_EOF) ||
1390 1.1 jdolecek (wpipe == NULL) || (wpipe->pipe_state & PIPE_EOF)) {
1391 1.24 jdolecek kn->kn_flags |= EV_EOF;
1392 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1393 1.90 ad mutex_exit(rpipe->pipe_lock);
1394 1.83 ad }
1395 1.1 jdolecek return (1);
1396 1.1 jdolecek }
1397 1.83 ad
1398 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1399 1.90 ad mutex_exit(rpipe->pipe_lock);
1400 1.83 ad }
1401 1.1 jdolecek return (kn->kn_data > 0);
1402 1.1 jdolecek }
1403 1.1 jdolecek
1404 1.1 jdolecek static int
1405 1.1 jdolecek filt_pipewrite(struct knote *kn, long hint)
1406 1.1 jdolecek {
1407 1.99 ad struct pipe *rpipe = ((file_t *)kn->kn_obj)->f_data;
1408 1.82 ad struct pipe *wpipe;
1409 1.82 ad
1410 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1411 1.90 ad mutex_enter(rpipe->pipe_lock);
1412 1.83 ad }
1413 1.82 ad wpipe = rpipe->pipe_peer;
1414 1.1 jdolecek
1415 1.1 jdolecek if ((wpipe == NULL) || (wpipe->pipe_state & PIPE_EOF)) {
1416 1.1 jdolecek kn->kn_data = 0;
1417 1.63 perry kn->kn_flags |= EV_EOF;
1418 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1419 1.90 ad mutex_exit(rpipe->pipe_lock);
1420 1.83 ad }
1421 1.1 jdolecek return (1);
1422 1.1 jdolecek }
1423 1.1 jdolecek kn->kn_data = wpipe->pipe_buffer.size - wpipe->pipe_buffer.cnt;
1424 1.1 jdolecek if (wpipe->pipe_state & PIPE_DIRECTW)
1425 1.1 jdolecek kn->kn_data = 0;
1426 1.1 jdolecek
1427 1.83 ad if ((hint & NOTE_SUBMIT) == 0) {
1428 1.90 ad mutex_exit(rpipe->pipe_lock);
1429 1.83 ad }
1430 1.1 jdolecek return (kn->kn_data >= PIPE_BUF);
1431 1.1 jdolecek }
1432 1.27 jdolecek
1433 1.27 jdolecek static const struct filterops pipe_rfiltops =
1434 1.27 jdolecek { 1, NULL, filt_pipedetach, filt_piperead };
1435 1.27 jdolecek static const struct filterops pipe_wfiltops =
1436 1.27 jdolecek { 1, NULL, filt_pipedetach, filt_pipewrite };
1437 1.27 jdolecek
1438 1.27 jdolecek static int
1439 1.113 rmind pipe_kqfilter(file_t *fp, struct knote *kn)
1440 1.27 jdolecek {
1441 1.35 pk struct pipe *pipe;
1442 1.92 ad kmutex_t *lock;
1443 1.27 jdolecek
1444 1.99 ad pipe = ((file_t *)kn->kn_obj)->f_data;
1445 1.92 ad lock = pipe->pipe_lock;
1446 1.92 ad
1447 1.92 ad mutex_enter(lock);
1448 1.82 ad
1449 1.27 jdolecek switch (kn->kn_filter) {
1450 1.27 jdolecek case EVFILT_READ:
1451 1.27 jdolecek kn->kn_fop = &pipe_rfiltops;
1452 1.27 jdolecek break;
1453 1.27 jdolecek case EVFILT_WRITE:
1454 1.27 jdolecek kn->kn_fop = &pipe_wfiltops;
1455 1.35 pk pipe = pipe->pipe_peer;
1456 1.35 pk if (pipe == NULL) {
1457 1.113 rmind /* Other end of pipe has been closed. */
1458 1.92 ad mutex_exit(lock);
1459 1.27 jdolecek return (EBADF);
1460 1.27 jdolecek }
1461 1.27 jdolecek break;
1462 1.27 jdolecek default:
1463 1.92 ad mutex_exit(lock);
1464 1.88 pooka return (EINVAL);
1465 1.27 jdolecek }
1466 1.82 ad
1467 1.35 pk kn->kn_hook = pipe;
1468 1.35 pk SLIST_INSERT_HEAD(&pipe->pipe_sel.sel_klist, kn, kn_selnext);
1469 1.92 ad mutex_exit(lock);
1470 1.82 ad
1471 1.27 jdolecek return (0);
1472 1.27 jdolecek }
1473 1.2 jdolecek
1474 1.2 jdolecek /*
1475 1.2 jdolecek * Handle pipe sysctls.
1476 1.2 jdolecek */
1477 1.47 atatat SYSCTL_SETUP(sysctl_kern_pipe_setup, "sysctl kern.pipe subtree setup")
1478 1.47 atatat {
1479 1.47 atatat
1480 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1481 1.54 atatat CTLFLAG_PERMANENT,
1482 1.47 atatat CTLTYPE_NODE, "kern", NULL,
1483 1.47 atatat NULL, 0, NULL, 0,
1484 1.47 atatat CTL_KERN, CTL_EOL);
1485 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1486 1.54 atatat CTLFLAG_PERMANENT,
1487 1.56 atatat CTLTYPE_NODE, "pipe",
1488 1.56 atatat SYSCTL_DESCR("Pipe settings"),
1489 1.47 atatat NULL, 0, NULL, 0,
1490 1.47 atatat CTL_KERN, KERN_PIPE, CTL_EOL);
1491 1.47 atatat
1492 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1493 1.54 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1494 1.56 atatat CTLTYPE_INT, "maxkvasz",
1495 1.56 atatat SYSCTL_DESCR("Maximum amount of kernel memory to be "
1496 1.56 atatat "used for pipes"),
1497 1.47 atatat NULL, 0, &maxpipekva, 0,
1498 1.47 atatat CTL_KERN, KERN_PIPE, KERN_PIPE_MAXKVASZ, CTL_EOL);
1499 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1500 1.54 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1501 1.56 atatat CTLTYPE_INT, "maxloankvasz",
1502 1.56 atatat SYSCTL_DESCR("Limit for direct transfers via page loan"),
1503 1.47 atatat NULL, 0, &limitpipekva, 0,
1504 1.47 atatat CTL_KERN, KERN_PIPE, KERN_PIPE_LIMITKVA, CTL_EOL);
1505 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1506 1.54 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
1507 1.56 atatat CTLTYPE_INT, "maxbigpipes",
1508 1.56 atatat SYSCTL_DESCR("Maximum number of \"big\" pipes"),
1509 1.47 atatat NULL, 0, &maxbigpipes, 0,
1510 1.47 atatat CTL_KERN, KERN_PIPE, KERN_PIPE_MAXBIGPIPES, CTL_EOL);
1511 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1512 1.54 atatat CTLFLAG_PERMANENT,
1513 1.56 atatat CTLTYPE_INT, "nbigpipes",
1514 1.56 atatat SYSCTL_DESCR("Number of \"big\" pipes"),
1515 1.47 atatat NULL, 0, &nbigpipe, 0,
1516 1.47 atatat CTL_KERN, KERN_PIPE, KERN_PIPE_NBIGPIPES, CTL_EOL);
1517 1.54 atatat sysctl_createv(clog, 0, NULL, NULL,
1518 1.54 atatat CTLFLAG_PERMANENT,
1519 1.56 atatat CTLTYPE_INT, "kvasize",
1520 1.56 atatat SYSCTL_DESCR("Amount of kernel memory consumed by pipe "
1521 1.56 atatat "buffers"),
1522 1.47 atatat NULL, 0, &amountpipekva, 0,
1523 1.47 atatat CTL_KERN, KERN_PIPE, KERN_PIPE_KVASIZE, CTL_EOL);
1524 1.2 jdolecek }
1525